Kinetic theory of geodesic acoustic modes in toroidal plasmas:a brief review
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  • 英文篇名:Kinetic theory of geodesic acoustic modes in toroidal plasmas:a brief review
  • 作者:Zhiyong ; QIU ; Liu ; CHEN ; Fulvio ; ZONCA
  • 英文作者:Zhiyong QIU;Liu CHEN;Fulvio ZONCA;Institute for Fusion Theory and Simulation and Department of Physics,Zhejiang University;Department of Physics and Astronomy,University of California;ENEA,Fusion and Nuclear Safety Department;
  • 英文关键词:geodesic acoustic mode;;kinetic theory;;nonlinear physics;;energetic particle physics
  • 中文刊名:DNZK
  • 英文刊名:等离子体科学和技术(英文版)
  • 机构:Institute for Fusion Theory and Simulation and Department of Physics,Zhejiang University;Department of Physics and Astronomy,University of California;ENEA,Fusion and Nuclear Safety Department;
  • 出版日期:2018-09-15
  • 出版单位:Plasma Science and Technology
  • 年:2018
  • 期:v.20
  • 基金:supported by National Natural Science Foundation of China under grant Nos.11575157 and 11235009;; the National Magnetic Confinement Fusion Research Program under Grants Nos.2013GB104004 and 2013GB111004;; Fundamental Research Fund for Chinese Central Universities under Grant No.2017FZA3004;; EUROfusion Consortium under grant agreement No.633053;; US DoE Grants
  • 语种:英文;
  • 页:DNZK201809006
  • 页数:26
  • CN:09
  • ISSN:34-1187/TL
  • 分类号:28-53
摘要
Geodesic acoustic modes(GAM) are oscillating zonal structures unique to toroidal plasmas,and have been extensively studied in the past decades due to their potential capabilities of regulating microscopic turbulences and associated anomalous transport.This article reviews linear and nonlinear theories of GAM;with emphases on kinetic treatment,system nonuniformity and realistic magnetic geometry,in order to reflect the realistic experimental conditions.Specifically,in the linear physics,the resonant wave–particle interactions are discussed,with the application to resonant excitation by energetic particles(EPs).The theory of EP-induced GAM(EGAM) is applied to realistic devices for the interpretation of experimental observations,and global effects due to coupling to GAM continuum are also discussed.Meanwhile,in the nonlinear physics,the spontaneous GAM excitation by microscale turbulences is reviewed,including the effects of various system nonuniformities.A unified theoretical framework of GAM/EGAM is then constructed based on our present understandings.The first-principle-based GAM/EGAM theories reviewed here,thus,provide the tools needed for the understanding and interpretation of experimental/numerical results.
        Geodesic acoustic modes(GAM) are oscillating zonal structures unique to toroidal plasmas,and have been extensively studied in the past decades due to their potential capabilities of regulating microscopic turbulences and associated anomalous transport.This article reviews linear and nonlinear theories of GAM;with emphases on kinetic treatment,system nonuniformity and realistic magnetic geometry,in order to reflect the realistic experimental conditions.Specifically,in the linear physics,the resonant wave–particle interactions are discussed,with the application to resonant excitation by energetic particles(EPs).The theory of EP-induced GAM(EGAM) is applied to realistic devices for the interpretation of experimental observations,and global effects due to coupling to GAM continuum are also discussed.Meanwhile,in the nonlinear physics,the spontaneous GAM excitation by microscale turbulences is reviewed,including the effects of various system nonuniformities.A unified theoretical framework of GAM/EGAM is then constructed based on our present understandings.The first-principle-based GAM/EGAM theories reviewed here,thus,provide the tools needed for the understanding and interpretation of experimental/numerical results.
引文
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